Cargando…

Influence of TiN Coating on the Drawing Force and Friction Coefficient in the Deep Drawing Process of AlMg4.5Mn0.7 Thin Sheets

The influence of various process parameters on the deep drawing process is a current research topic in sheet metal forming technology. Starting from the application of the previously constructed original testing device, an original tribological model was developed based on the process of sheet metal...

Descripción completa

Detalles Bibliográficos
Autores principales: Djordjević, Milan T., Aleksandrović, Srbislav, Arsić, Dušan, Nikolić, Ružica R., Szmidla, Janusz, Todić, Aleksandar, Čukanović, Dragan, Ulewicz, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254268/
https://www.ncbi.nlm.nih.gov/pubmed/37297101
http://dx.doi.org/10.3390/ma16113968
_version_ 1785056601913163776
author Djordjević, Milan T.
Aleksandrović, Srbislav
Arsić, Dušan
Nikolić, Ružica R.
Szmidla, Janusz
Todić, Aleksandar
Čukanović, Dragan
Ulewicz, Robert
author_facet Djordjević, Milan T.
Aleksandrović, Srbislav
Arsić, Dušan
Nikolić, Ružica R.
Szmidla, Janusz
Todić, Aleksandar
Čukanović, Dragan
Ulewicz, Robert
author_sort Djordjević, Milan T.
collection PubMed
description The influence of various process parameters on the deep drawing process is a current research topic in sheet metal forming technology. Starting from the application of the previously constructed original testing device, an original tribological model was developed based on the process of sheet metal strip sliding between flat contact surfaces under variable pressures. A complex experiment was executed using an Al alloy sheet, tool contact surfaces of different roughness, two types of lubricants and variable contact pressures. The procedure included analytically pre-defined contact pressure functions based on which, for each of the mentioned conditions, the dependencies of the drawing forces and friction coefficients were obtained. The pressure in function P1 constantly decreased from a high initial value until the minimum, while in function P3 the pressure increased until the minimum value at the halfway point of the stroke, after which it increased up to the initial value. On the other hand, the pressure in function P2 constantly increased from the initial minimum value until the maximum value, while in function P4 the pressure increased until reaching the maximum value at the halfway point of the stroke, after which it decreased to the minimum value. This enabled the determination of the influence of tribological factors on the process parameters of intensity of traction (deformation force) and coefficient of friction. The pressure functions starting with decreasing trends produced higher values for the traction forces and the friction coefficient. In addition, it was established that the roughness of the contact surfaces of the tool, especially those with titanium nitride coating, has a significant influence on the process parameters. For surfaces of lower roughness (polished), a tendency of the Al thin sheet to form a glued-on layer was noticed. This was especially prominent for lubrication with MoS(2)-based grease under conditions of high contact pressure (functions P1 and P4 at the beginning of the contact).
format Online
Article
Text
id pubmed-10254268
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102542682023-06-10 Influence of TiN Coating on the Drawing Force and Friction Coefficient in the Deep Drawing Process of AlMg4.5Mn0.7 Thin Sheets Djordjević, Milan T. Aleksandrović, Srbislav Arsić, Dušan Nikolić, Ružica R. Szmidla, Janusz Todić, Aleksandar Čukanović, Dragan Ulewicz, Robert Materials (Basel) Article The influence of various process parameters on the deep drawing process is a current research topic in sheet metal forming technology. Starting from the application of the previously constructed original testing device, an original tribological model was developed based on the process of sheet metal strip sliding between flat contact surfaces under variable pressures. A complex experiment was executed using an Al alloy sheet, tool contact surfaces of different roughness, two types of lubricants and variable contact pressures. The procedure included analytically pre-defined contact pressure functions based on which, for each of the mentioned conditions, the dependencies of the drawing forces and friction coefficients were obtained. The pressure in function P1 constantly decreased from a high initial value until the minimum, while in function P3 the pressure increased until the minimum value at the halfway point of the stroke, after which it increased up to the initial value. On the other hand, the pressure in function P2 constantly increased from the initial minimum value until the maximum value, while in function P4 the pressure increased until reaching the maximum value at the halfway point of the stroke, after which it decreased to the minimum value. This enabled the determination of the influence of tribological factors on the process parameters of intensity of traction (deformation force) and coefficient of friction. The pressure functions starting with decreasing trends produced higher values for the traction forces and the friction coefficient. In addition, it was established that the roughness of the contact surfaces of the tool, especially those with titanium nitride coating, has a significant influence on the process parameters. For surfaces of lower roughness (polished), a tendency of the Al thin sheet to form a glued-on layer was noticed. This was especially prominent for lubrication with MoS(2)-based grease under conditions of high contact pressure (functions P1 and P4 at the beginning of the contact). MDPI 2023-05-25 /pmc/articles/PMC10254268/ /pubmed/37297101 http://dx.doi.org/10.3390/ma16113968 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Djordjević, Milan T.
Aleksandrović, Srbislav
Arsić, Dušan
Nikolić, Ružica R.
Szmidla, Janusz
Todić, Aleksandar
Čukanović, Dragan
Ulewicz, Robert
Influence of TiN Coating on the Drawing Force and Friction Coefficient in the Deep Drawing Process of AlMg4.5Mn0.7 Thin Sheets
title Influence of TiN Coating on the Drawing Force and Friction Coefficient in the Deep Drawing Process of AlMg4.5Mn0.7 Thin Sheets
title_full Influence of TiN Coating on the Drawing Force and Friction Coefficient in the Deep Drawing Process of AlMg4.5Mn0.7 Thin Sheets
title_fullStr Influence of TiN Coating on the Drawing Force and Friction Coefficient in the Deep Drawing Process of AlMg4.5Mn0.7 Thin Sheets
title_full_unstemmed Influence of TiN Coating on the Drawing Force and Friction Coefficient in the Deep Drawing Process of AlMg4.5Mn0.7 Thin Sheets
title_short Influence of TiN Coating on the Drawing Force and Friction Coefficient in the Deep Drawing Process of AlMg4.5Mn0.7 Thin Sheets
title_sort influence of tin coating on the drawing force and friction coefficient in the deep drawing process of almg4.5mn0.7 thin sheets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254268/
https://www.ncbi.nlm.nih.gov/pubmed/37297101
http://dx.doi.org/10.3390/ma16113968
work_keys_str_mv AT djordjevicmilant influenceoftincoatingonthedrawingforceandfrictioncoefficientinthedeepdrawingprocessofalmg45mn07thinsheets
AT aleksandrovicsrbislav influenceoftincoatingonthedrawingforceandfrictioncoefficientinthedeepdrawingprocessofalmg45mn07thinsheets
AT arsicdusan influenceoftincoatingonthedrawingforceandfrictioncoefficientinthedeepdrawingprocessofalmg45mn07thinsheets
AT nikolicruzicar influenceoftincoatingonthedrawingforceandfrictioncoefficientinthedeepdrawingprocessofalmg45mn07thinsheets
AT szmidlajanusz influenceoftincoatingonthedrawingforceandfrictioncoefficientinthedeepdrawingprocessofalmg45mn07thinsheets
AT todicaleksandar influenceoftincoatingonthedrawingforceandfrictioncoefficientinthedeepdrawingprocessofalmg45mn07thinsheets
AT cukanovicdragan influenceoftincoatingonthedrawingforceandfrictioncoefficientinthedeepdrawingprocessofalmg45mn07thinsheets
AT ulewiczrobert influenceoftincoatingonthedrawingforceandfrictioncoefficientinthedeepdrawingprocessofalmg45mn07thinsheets